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Determining the Maximum Cumulative Ratios for Mixtures Observed in Ground Water Wells Used as Drinking Water Supplies in the United States

机译:确定在美国用作饮用水的地下水井中观察到的混合物的最大累积比

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摘要

The maximum cumulative ratio (MCR) developed in previous work is a tool to evaluate the need to perform cumulative risk assessments. MCR is the ratio of the cumulative exposures to multiple chemicals to the maximum exposure from one of the chemicals when exposures are described using a common metric. This tool is used to evaluate mixtures of chemicals measured in samples of untreated ground water as source for drinking water systems in the United States. The mixtures of chemicals in this dataset differ from those examined in our previous work both in terms of the predicted toxicity and compounds measured. Despite these differences, MCR values in this study follow patterns similar to those seen earlier. MCR values for the mixtures have a mean (range) of 2.2 (1.03–5.4) that is much smaller than the mean (range) of 16 (5–34) in the mixtures in previous study. The MCR values of the mixtures decline as Hazard Index (HI) values increase. MCR values for mixtures with larger HI values are not affected by possible contributions from chemicals that may occur at levels below the detection limits. This work provides a second example of use of the MCR tool in the evaluation of mixtures that occur in the environment.
机译:先前工作中开发的最大累积比率(MCR)是一种工具,用于评估进行累积风险评估的需求。 MCR是当使用通用指标描述暴露量时,多种化学药品的累积暴露量与一种化学药品的最大暴露量之比。该工具用于评估在未经处理的地下水样品中测得的化学品混合物,这些样品是美国饮用水系统的来源。该数据集中的化学混合物在预测的毒性和所测化合物方面均不同于我们先前的工作。尽管存在这些差异,但本研究中的MCR值遵循与之前所见相似的模式。混合物的MCR值的平均值(范围)为2.2(1.03-5.4),比以前研究中的混合物的平均值(范围)16(5-34)小得多。混合物的MCR值随着危险指数(HI)值的增加而下降。具有较高HI值的混合物的MCR值不受化学物质可能以低于检测限的水平发生的可能贡献的影响。这项工作提供了使用MCR工具评估环境中出现的混合物的第二个示例。

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